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An improved shearing displacement law for analyzing pile-soil interaction

机译:一种改进的分析桩土相互作用的剪切流离失所规律

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The Soil Improved shearing displacement law is used to analyze Pile-soil interaction and this method can consider stratified foundation, but can't consider pile-soil slip. An improved shearing displacement law analyzing pile-soil interaction was proposed in this article which could think over pile-soil slip on interfaces and interaction of pile-soil on stratified foundation. Rock and soil's parameter is very crucial in geological engineering, the soil parameters were determined by parameter back analysis theory and the stress and deformation characteristic for vertical loading piles were analyzed by the improved shearing displaces law. These process was simulated by my own program. The calculation results show that the axial force of pile decreases with pile depth and the pile tip axial force is zero. The pile bottom resistance increases with load and the soil's resistance increases with the relative displacement between pile and soil. But, the frictional resistance growth rate with displacement is different in different soil. The silt's growth rate is minimum and the medium-fine sand mixed mucky soil is maximum. The pile frictional resistance increases with load and depth. It has greater directive significance for the pile design.
机译:土壤改善剪切位移法用于分析桩土相互作用,这种方法可以考虑分层基础,但不能考虑桩土滑道。在本文中提出了一种改进的剪切位移法分析桩土相互作用,可以考虑桩土滑移对分层基础桩土的界面和相互作用。岩石和土壤的参数在地质工程中非常重要,土壤参数由参数后分析理论确定,并通过改进的剪切移位法分析了垂直装载桩的应力和变形特征。这些过程由我自己的程序模拟。计算结果表明,桩的轴向力与桩深,桩尖轴力为零。桩底电阻随负荷增加,土壤的电阻随着桩和土壤之间的相对位移而增加。但是,不同土壤中摩擦抗性生长速率不同。淤泥的生长速率最低,中细沙混合肉糜土壤最大。桩摩擦阻力随负荷和深度而增加。它对桩设计具有更大的指导意义。

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